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使用吲哚菁绿发色团和金纳米壳组合增强的激光组织焊接。

Enhanced laser tissue soldering using indocyanine green chromophore and gold nanoshells combination.

机构信息

Amirkabir University of Technology, Faculty of Biomedical Engineering, Biomaterial Group, Laser and Nanobiophotonics Laboratory, Tehran-Iran.

出版信息

J Biomed Opt. 2011 Aug;16(8):088002. doi: 10.1117/1.3611001.

Abstract

Gold nanoshells (GNs) are new materials that have an optical response dictated by the plasmon resonance. The wavelength at which the resonance occurs depends on the core and shell sizes. The purposes of this study were to use the combination of indocyanine green (ICG) and different concentration of gold nanoshells for skin tissue soldering and also to examine the effect of laser soldering parameters on the properties of repaired skin. Two mixtures of albumin solder and different combinations of ICG and gold nanoshells were prepared. A full thickness incision of 2 × 20 mm(2) was made on the surface and after addition of mixtures it was irradiated by an 810 nm diode laser at different power densities. The changes of tensile strength (σ(t)) due to temperature rise, number of scan (Ns), and scan velocity (Vs) were investigated. The results showed at constant laser power density (I), σ(t) of repaired incisions increases by increasing the concentration of gold nanoshells in solder, Ns, and decreasing Vs. It was demonstrated that laser soldering using combination of ICG + GNs could be practical provided the optothermal properties of the tissue are carefully optimized. Also, the tensile strength of soldered skin is higher than skins that soldered with only ICG or GNs. In our case, this corresponds to σ(t) = 1800 g cm(-2) at I ∼ 47 Wcm(-2), T ∼ 85 [ordinal indicator, masculine]C, Ns = 10, and Vs = 0.3 mms(-1).

摘要

金纳米壳(GNs)是一种新型材料,其光学响应由等离子体共振决定。共振发生的波长取决于核壳的尺寸。本研究的目的是将吲哚菁绿(ICG)与不同浓度的金纳米壳结合用于皮肤组织焊接,并研究激光焊接参数对修复皮肤性能的影响。制备了两种白蛋白焊料混合物和不同组合的 ICG 和金纳米壳。在表面上制作了 2×20mm2 的全厚切口,在添加混合物后,用 810nm 二极管激光在不同的功率密度下照射。研究了由于温度升高、扫描次数(Ns)和扫描速度(Vs)的变化而引起的拉伸强度(σ(t))的变化。结果表明,在恒定激光功率密度(I)下,随着焊料中金纳米壳浓度、Ns 和 Vs 的增加,修复切口的σ(t)增加。结果表明,只要仔细优化组织的光热特性,使用 ICG+GNs 组合进行激光焊接是可行的。此外,焊接皮肤的拉伸强度高于仅使用 ICG 或 GNs 焊接的皮肤。在我们的案例中,这对应于 I∼47 Wcm−2、T∼85°C、Ns=10 和 Vs=0.3 mms−1 时的σ(t)=1800 g cm−2。

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